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Measurement of seawater surface tension coefficient based on bubble rising behavior

机译:基于泡沫上升行为的海水表面张力系数测量

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The surface tension of seawater becomes increasingly important on the construction of ocean environment and the analysis of ocean characteristics. A non-invasive measurement method of seawater surface tension coefficient across a salinity range of 10 g/kg <= S <= 30 g/kg and a temperature range of 25.83 degrees C <= t <= 37.79 degrees C was carried out through the visual measurement system in this paper. The implicit representation of the surface tension coefficient and bubble terminal rising velocity was established on the basis of the bubble force balance theory. The motion characteristics of the bubble were calculated by high-speed photography. Additionally, the intrinsic and extrinsic parameters of the camera, as well as the coefficients of lens distortion were estimated. A new correlation of the surface tension coefficient was developed as a function of the salinity and temperature. The quantitative correlations analysis shows that the experimental results are in good agreement with the predicted values by the typical correlations, and the maximum deviation is less than 0.28%, which indicates that the method is valid and has high precision. (C) 2019 Elsevier Ltd. All rights reserved.
机译:海水的表面张力对海洋环境建设以及海洋特征的分析变得越来越重要。通过10g / kg <= s <= 30g / kg的盐度范围的海水表面张力系数的非侵入性测量方法和25.83℃的温度范围为25.83℃<= 37.79c℃。本文的可视测量系统。基于气泡力平衡理论建立了表面张力系数和气泡终端上升速度的隐含表示。通过高速摄影计算泡沫的运动特性。另外,估计相机的内在和外在参数以及镜片失真的系数。作为盐度和温度的函数开发了表面张力系数的新相关性。定量相关性分析表明,实验结果与典型相关性与预测值吻合良好,最大偏差小于0.28%,这表明该方法有效并具有高精度。 (c)2019年elestvier有限公司保留所有权利。

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